• Title/Summary/Keyword: Equiaxed grain

검색결과 105건 처리시간 0.034초

Effects of Solution Treatment Temperatures on Microstructure and Mechanical Properties of TIG-MIG Hybrid Arc Additive Manufactured 5356 Aluminum Alloy

  • Zuo, Wei;Ma, Le;Lu, Yu;Li, Shu-yong;Ji, Zhiqiang;Ding, Min
    • Metals and materials international
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    • 제24권6호
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    • pp.1346-1358
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    • 2018
  • A novel additive manufacturing method with TIG-MIG hybrid heat source was applied for fabricating 5356 aluminum alloy component. In this paper the microstructure evolution, mechanical properties and fracture morphologies of both as-deposited and heat-treated component were investigated, and how these were affected by different heat-treated temperature. The as-deposited microstructure showed dominant equiaxed grains with second phase, and the size of them is coarse in the bottom region, medium in the middle region and fine in the top region owing to different thermal cycling conditions. Compared with as-deposited microstructure, the size of grain becomes large and second phases gradually dissolve in the matrix as heat-treated temperature increase. Different microstructures determine the mechanical properties of component. Results show that average ultimate tensile strength enhances from 226 to 270 MPa and average microhardness increases from 64.2 to 75.3 HV0.1 but ductility decreases from 33 to 6.5% with heat-treated temperature increasing. For all components, the tensile properties are almost the same in the vertical direction (Z) and horizontal direction (Y) due to equiaxed grains, which exhibits isotropy, and the mechanisms of these are analyzed in detailed. In general, the results demonstrate that hybrid arc heat source has the potential to fabricate aluminum alloy component.

미세조직적 인자가 밀소둔된 Ti-6Al-4V 합금의 피로 및 피로균열전파 거동에 미치는 영향 (Effect of Microstructural Factors on Fatigue and Fatigue Crack Propagation Behaviors of Mill-Annealed Ti-6Al-4V Alloy)

  • 박상후;김수민;이다은;안수진;김상식
    • 대한금속재료학회지
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    • 제56권12호
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    • pp.845-853
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    • 2018
  • To understand the effect of microstructural factors (i.e., the size of ${\alpha}$ phase, equiaxed vs bimodal structure) on high cycle fatigue (HCF) and fatigue crack propagation (FCP) behaviors of mill-annealed Ti-6Al-4V (Ti64) alloy, three specimens of EQ (equiaxed)-8 (8 indicates the size of ${\alpha}$ grain), BM (bimodal)-8, and BM-16 were studied. The uniaxial HCF and FCP tests were conducted at an R ratio of 0.1 under sinusoidal fatigue loading. The microstructural influence (i.e., EQ vs BM) was not significant on the tensile properties of mill-annealed Ti64 alloy, and showed an increase in tensile strength and elongation with decreasing gauge thickness from 50 mm to 1.3 mm. The microstructure, on the other hand, affected the resistance to HCF substantially. It was found that the EQ structure in mill-annealed Ti64 has better resistance to HCF than the BM structure, as a result of different crack initiation mechanism. Unlike HCF behavior, the effect of microstructural features on the FCP behavior of mill-annealed Ti64 was not significant. Among the three specimens, BM-16 specimen showed the highest near-threshold ΔK value, probably because it had the greatest slip reversibility with large ${\alpha}$ grains. The effect of microstructural factors on the HCF and FCP behaviors of mill-annealed Ti64 alloy are discussed based on fractographic and micrographic observations.

Nb을 첨가한 HP 초내열강관의 제조개발에 필요한 원심주조 조건이 조직과 기계적성질에 미치는 효과 (The Effects of Centrifugal Casting Conditions on the Structure and Mechanical Properties in Fabrication Development of Super Heat-Resisting Steel Pipe of HP Alloy Modified with Nb)

  • 최상호
    • 한국주조공학회지
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    • 제14권6호
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    • pp.566-575
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    • 1994
  • The effects of varying the pouring temperature and the die preheating temperature in producing centrifugally cast HP alloy modified with Nb was evaluated on the basis of the resultant macrostructure, microstructure and hardness of these castings. Increased die preheating temperatures and pouring temperatures resulted in an increase in the thickness of the columnar dendritic zone, the primary and secondary dendrite arm spacing and the thickness of the zone of porosity at the casting I.D.(inner diameter). Lower die preheating temperature and pouring temperatures result in increased grain fineness and an increased zone of equiaxed grains. A higher hardness was achieved toward the casting O.D.(outer diameter) compared to the casting I.D., attributable to alloy segregation toward the casting I.D. and segregation differences resulting from reduced solidification cooling rates toward the casting I.D. Also, a higher hardness was realized at the cold end of the casting attributed to a more uniform distribution of carbides.

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극저온 압연에 의한 초세립 Al 5083 Alloy 제조 (Formation of ultrafine Grains in the Al 5083 Alloy by Cryogenic Rolling Process)

  • 이영범;심혜정;남원종
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2003년도 추계학술대회논문집
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    • pp.163-167
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    • 2003
  • The large deformation at cryogenic temperature would be one of the effective methods to produce large bulk UFG materials. The effects of annealing temperature 150∼300$^{\circ}C$, on microstructure and mechanical properties of the sheets received 85% reduction at cryogenic temperature were investigated. In comparison with those at room temperature. Annealing of 5083 Al alloy deformed 85%, at 200$^{\circ}C$ for an hour, results in the considerable increase of tensile elongation without the great loss of strength and the occurrence of equiaxed grains less than 300nm in diameter.

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여러가지 부식용액으로부터 동일두께의 산화막을 갖는 Zircaloy-4의 임피던스 특성분석

  • 김선재;김경호;백종혁;최병권;정용환;정연호;국일현
    • 한국원자력학회:학술대회논문집
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    • 한국원자력학회 1998년도 춘계학술발표회논문집(2)
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    • pp.136-141
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    • 1998
  • 재결정된 Zircaloy-4 합금을 35$0^{\circ}C$ 의 여러가지 알칼리 금속 수산화물 수용액에서 부식시켜 동일한 무게증가량을 갖도록 조절한 뒤, 1M H$_2$SO$_4$ 용액에서 그 시편에 대한 임피던스 특성을 분석하였다. LiOH, NaOH, KOH 순서로 알칼리 금속의 이온반경이 클수록 수소이온의 이동에 대한 임피던스가 증가함에 따라 산화막을 통한 수소이온의 흡수가 점차로 어려워졌다. 이것은 Zr$^4$$^{+}$와 이온반경이 비슷한 알칼리 금속 수용액 조건에서 얻은 부식시편은 open grain boundary 와 equiaxed microstructure의 산화막을 갖기 때문이었고, 반면에 Zr$^4$$^{+}$와 이온반경의 차이가 큰 알칼리 금속 수용액 조건에서 얻은 부식시편은 compact 한 columnar microstructure의 산화막을 갖기 때문인 것으로 생각된다.

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저온 기계적 합금화한 nanocrystalline Al-5at.%Ti 합금의 압축변형거동 (The Compressive Deformation Behavior of Nanocrystalline Al-5at.%Ti Alloy Prepared by Mechanical Alloying at Low Temperature)

  • 정경화;오영민;김선진
    • 한국분말재료학회지
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    • 제6권4호
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    • pp.277-285
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    • 1999
  • Mechanical properties of nanocrystalline Al-5at.%Ti alloy were investigated through high temperature compression test. Al-5at.%Ti nanocrystalline metal powders, which had finer and more equiaxed shape than those produced at room temperature, were produced by mechanical alloying at low temperature. The powders were successfully consolidated to 99fo of theoretical density by vacuum hot pressing. XRD and TEM analysis revealed that $Al_3Ti$ intermetallic compounds formed inside powders and pure Al region with coarse grains formed between powders, especially at triple junction. Mechanical properties in terms of hardness and strength were improved by grain size refinement, but ductility decreased presumably due to the formation of the weak interfaces between Al pool and powders.

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Ti과 Nb에 의한 HSS 작업롤재의 미세조직 제어 (Microstructural Control of High Speed Steel Roll Material with Titanium and Niobium)

  • 김진수;김동규;최진원;이희춘
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 1999년도 제3회 압연심포지엄 논문집 압연기술의 미래개척 (Exploitation of Future Rolling Technologies)
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    • pp.262-271
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    • 1999
  • This work was intended to modify the solidification structure of high speed steel roll material for hot strip mill, by the introduction of alloying elements designed to form primary carbide dispersions via melt treatment procedure. Solidification structure was modified by the melt treatment with titanium and distribution. This modifying effect could be attributed to the fact that the nuclie formed at high temperature upon inoculation induce the formation of fine equiaxed grain and primary carbide during solification, which is also likely to be responsible for the fact that TiC acts as effective nuclie for primary VC solidification.

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극저온 압연에 의한 초세립 5083 A1 Alloy 제조 연구 (Formation of Ultrafine Grains in 5083 Al Alloy by Cryogenic Rolling Process)

  • 이영범;심혜정;남원종
    • 소성∙가공
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    • 제13권2호
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    • pp.137-141
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    • 2004
  • The large deformation at cryogenic temperature is expected as one of the effective methods to produce large bulk ultrafine grained materials. The effects of annealing temperature, 150∼$300^{\circ}C$, on microstructures and mechanical properties of the sheets received 85% reduction at cryogenic temperature were investigated, in comparison with those at room temperature. Annealing of 5083 Al alloy deformed 85%, at $200^{\circ}C$ for an hour,. resulted in the considerable increase of tensile elongation without the great loss of strength and the occurrence of equiaxed grains less than 300nm in diameter.

AZ31 마그네슘합금 레이저 용접부의 미세조직 및 미소경도의 분포에 관한 연구 (A study on the microstructure and micro-hardenss distribution in laser welded AZ31 magnesium alloy)

  • 최영환;이목영;최시훈
    • 한국레이저가공학회지
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    • 제15권3호
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    • pp.11-15
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    • 2012
  • The laser weld of AZ31 magnesium alloy was characterized with OM, EBSD and micros vickers hardness tester in experiment. EBSD analysis and micro-hardness measurements were carried out at the three regions (Equiaxed Zone, Columnar Dendrite Zone, Base Metal) of the welded AZ31Mg alloy sheets. The magnesium alloy show the rectangular shape bead in laser weld. EBSD analysis revealed that the three regions show the heterogeneous distribution of grain size and microtexture. Micro-hardness measurement also revealed that the heterogeneous distribution of microstructure contributed to the heterogeneous micro-hardness distribution in the three regions.

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초미세 결정립 Cu-3%Ag 합금의 기계적/전기적 특성 (Mechanical and Electrical Properties of Submicrocrystalline Cu-3%Ag Alloy)

  • 고영건;이철원;남궁승;이동헌;신동혁
    • 소성∙가공
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    • 제18권6호
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    • pp.476-481
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    • 2009
  • The present work demonstrates the mechanical and electrical responses of submicrocrystalline Cu-3%Ag alloy as a function of strain imposed by equal channel angular pressing(ECAP). From transmission electron microscope observation, the resulting microstructures of Cu-3%Ag alloy deformed by ECAP for 8-pass or more consist of reasonably fine, equiaxed grains without having a strong preferred orientation, suggesting that microstructure evolution is slower than that of pure-Al and its alloys owing to low stacking fault energy. The results of room temperature tension tests reveal that, as the amount of applied strain increases, the tensile strength of submicrocrystalline Cu-3%Ag alloy increases whereas losing both the ductility and the electrical conductivity. Such phenomenon can be explained based on microstructure featured by the non-equilibrium grain boundaries.